US11827066B2 - Device for securing a pneumatic spring with an acoustic decoupling function - Google Patents
Device for securing a pneumatic spring with an acoustic decoupling function Download PDFInfo
- Publication number
- US11827066B2 US11827066B2 US17/428,362 US202017428362A US11827066B2 US 11827066 B2 US11827066 B2 US 11827066B2 US 202017428362 A US202017428362 A US 202017428362A US 11827066 B2 US11827066 B2 US 11827066B2
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- United States
- Prior art keywords
- air spring
- body portion
- fastening means
- plastics part
- spring cover
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G15/00—Resilient suspensions characterised by arrangement, location or type of combined spring and vibration damper, e.g. telescopic type
- B60G15/08—Resilient suspensions characterised by arrangement, location or type of combined spring and vibration damper, e.g. telescopic type having fluid spring
- B60G15/12—Resilient suspensions characterised by arrangement, location or type of combined spring and vibration damper, e.g. telescopic type having fluid spring and fluid damper
- B60G15/14—Resilient suspensions characterised by arrangement, location or type of combined spring and vibration damper, e.g. telescopic type having fluid spring and fluid damper the damper being connected to the stub axle and the spring being arranged around the damper
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G11/00—Resilient suspensions characterised by arrangement, location or kind of springs
- B60G11/26—Resilient suspensions characterised by arrangement, location or kind of springs having fluid springs only, e.g. hydropneumatic springs
- B60G11/28—Resilient suspensions characterised by arrangement, location or kind of springs having fluid springs only, e.g. hydropneumatic springs characterised by means specially adapted for attaching the spring to axle or sprung part of the vehicle
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16B—DEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
- F16B35/00—Screw-bolts; Stay-bolts; Screw-threaded studs; Screws; Set screws
- F16B35/04—Screw-bolts; Stay-bolts; Screw-threaded studs; Screws; Set screws with specially-shaped head or shaft in order to fix the bolt on or in an object
- F16B35/041—Specially-shaped shafts
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16B—DEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
- F16B43/00—Washers or equivalent devices; Other devices for supporting bolt-heads or nuts
- F16B43/001—Washers or equivalent devices; Other devices for supporting bolt-heads or nuts for sealing or insulation
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16B—DEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
- F16B5/00—Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them
- F16B5/02—Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of fastening members using screw-thread
- F16B5/0241—Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of fastening members using screw-thread with the possibility for the connection to absorb deformation, e.g. thermal or vibrational
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16F—SPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
- F16F9/00—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
- F16F9/06—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium using both gas and liquid
- F16F9/08—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium using both gas and liquid where gas is in a chamber with a flexible wall
- F16F9/084—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium using both gas and liquid where gas is in a chamber with a flexible wall comprising a gas spring contained within a flexible wall, the wall not being in contact with the damping fluid, i.e. mounted externally on the damper cylinder
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16F—SPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
- F16F9/00—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
- F16F9/32—Details
- F16F9/54—Arrangements for attachment
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2202/00—Indexing codes relating to the type of spring, damper or actuator
- B60G2202/10—Type of spring
- B60G2202/15—Fluid spring
- B60G2202/152—Pneumatic spring
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2204/00—Indexing codes related to suspensions per se or to auxiliary parts
- B60G2204/10—Mounting of suspension elements
- B60G2204/12—Mounting of springs or dampers
- B60G2204/126—Mounting of pneumatic springs
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2204/00—Indexing codes related to suspensions per se or to auxiliary parts
- B60G2204/40—Auxiliary suspension parts; Adjustment of suspensions
- B60G2204/41—Elastic mounts, e.g. bushings
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2206/00—Indexing codes related to the manufacturing of suspensions: constructional features, the materials used, procedures or tools
- B60G2206/01—Constructional features of suspension elements, e.g. arms, dampers, springs
- B60G2206/40—Constructional features of dampers and/or springs
- B60G2206/42—Springs
- B60G2206/424—Plunger or top retainer construction for bellows or rolling lobe type air springs
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2206/00—Indexing codes related to the manufacturing of suspensions: constructional features, the materials used, procedures or tools
- B60G2206/01—Constructional features of suspension elements, e.g. arms, dampers, springs
- B60G2206/70—Materials used in suspensions
- B60G2206/71—Light weight materials
- B60G2206/7104—Thermoplastics
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2206/00—Indexing codes related to the manufacturing of suspensions: constructional features, the materials used, procedures or tools
- B60G2206/01—Constructional features of suspension elements, e.g. arms, dampers, springs
- B60G2206/70—Materials used in suspensions
- B60G2206/73—Rubber; Elastomers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2600/00—Indexing codes relating to particular elements, systems or processes used on suspension systems or suspension control systems
- B60G2600/44—Vibration noise suppression
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16B—DEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
- F16B37/00—Nuts or like thread-engaging members
- F16B37/04—Devices for fastening nuts to surfaces, e.g. sheets, plates
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16F—SPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
- F16F9/00—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
- F16F9/02—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium using gas only or vacuum
- F16F9/04—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium using gas only or vacuum in a chamber with a flexible wall
- F16F9/0454—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium using gas only or vacuum in a chamber with a flexible wall characterised by the assembling method or by the mounting arrangement, e.g. mounting of the membrane
Definitions
- the present application relates to a device for fastening an air spring to a body portion of a motor vehicle.
- An air spring is arranged between the motor vehicle chassis or a wheel carrier and the motor vehicle body and thereby performs the function of cushioning the wheel.
- the air spring substantially consists of an air spring cover, a rolling piston and a rolling bellows clamped therebetween in an airtight manner, thereby delimiting a working chamber under air pressure.
- the rolling bellows is enclosed by a sleeve-shaped outer guide and, during spring compression, rolls on the concentric rolling piston with the formation of a rolling fold.
- the air spring strut is connected to the motor vehicle body by means of appropriate fastening means.
- Use is usually made of stud bolts or screws.
- said bolts or screws are recessed/introduced in the air spring cover in a gastight manner and are subsequently screw-fastened by means of nuts.
- a shock damper is arranged within the air spring, said shock damper damping the vibrations of the wheel or of the motor vehicle body.
- This shock damper is connected on the one hand to the wheel carrier and is supportively fastened on the other hand via a damper bearing in the air spring cover by way of its piston rod, which can dip into the damper tube.
- high tensile and compressive forces act particularly on the pot-shaped bearing receptacle of the air spring cover. These forces are introduced into the motor vehicle body via the air spring cover.
- the air spring cover bears directly against the body by way of its upper side. Owing to the chassis operation, structure-borne sound waves are introduced into the body, which constitute an unpleasant source of noise. There are increasingly great requirements on the acoustic decoupling of chassis noises into the vehicle interior. New standards in terms of vehicle interior insulation are set in particular by the development progress with respect to E-mobility, since the chassis noises are no longer covered by the engine noises and thus are perceived as unpleasant by the vehicle occupants.
- a description is given of an acoustic bearing which is constructed from a plurality of disks and which is arranged between the air spring cover and the body portion.
- solid disks composed of steel, aluminum or plastic are used, wherein at least one layer composed of elastomer material, for example composed of polyurethane, is arranged between the solid disks.
- the fastening means for attachment of the air spring strut to the body portion are plugged through the acoustic bearing.
- This construction permits the simultaneous transmission of tensile and compressive forces, with acoustic decoupling being effected by way of the elastomer material.
- the intention is to prevent the sound waves from being conducted/transmitted in an unimpeded manner into the body and ultimately into the vehicle interior.
- a device for fastening an air spring to a body portion of a motor vehicle at least comprising an air spring cover, wherein the air spring cover comprises at least one fastening means, by means of which the air spring can be connected to a body portion of the motor vehicle, wherein, for attachment of the air spring, the fastening means is plugged through an opening of the body portion and is fixed to said body portion in a force-fitting manner by a securing element, wherein a first and a second plastics part are provided for acoustic decoupling of the air spring, wherein the first plastics part is clamped between the body portion and the securing element and the second plastics part is provided so as to be positioned below the body portion.
- the air spring cover is preferably manufactured from a thermoplastic or thermosetting plastic.
- a reflection effect at the boundary surfaces of the contacting components is utilized during the transmission of structure-borne sound waves.
- the first and the second plastics part are in the force path of the attachment in such a way that the structure-borne sound waves transmitted from the air spring cover to the fastening means are inhibited during the propagation into the body portion.
- this construction reduces the effective connected surfaces of the components and ensures that the fastening means is spaced apart from the body portion.
- the effective surface for the transmission of structure-borne sound is thus reduced significantly by the geometric configuration of the first and second plastics part.
- the different material properties of plastic compared with metal have a sound-reducing effect.
- the second plastics part is a sleeve which is pushed onto the fastening means in such a way that the air spring cover is spatially spaced apart from the body portion.
- the sleeve is positioned between the air spring cover and the lower side of the body portion and, as a result, serves as a spacer.
- the second plastics part is a ring which is pushed onto the fastening means, and which terminates flush with the air spring cover, in such a way that the ring and the air spring cover bear against the body portion.
- the ring as second plastics part is embedded in the air spring cover, and therefore both ring and air spring cover bear with their upper side against the lower side of the body portion in an areal manner.
- This solution does not increase the axial installation space requirement, and likewise ensures acoustic decoupling. In this case, it is important that the ring lies in the axial force path of the fastening means and the securing element.
- the second plastics part is formed from the material of the air spring cover in such a way that said material surrounds the fastening means in a ring-shaped manner, and therefore the air spring cover bears against the body portion.
- the ring is replaced by the material of the air spring cover, wherein the material encloses the fastening means in such a way that said material likewise lies in the axial force path of the fastening means and the securing element and ensures that the fastening means is spaced apart from the body portion.
- the first plastics part is a disk.
- This disk serves as a preload element and ensures that there is a sufficient preload force for fixing the securing element to the fastening means in an adequate manner. It also ensures that the securing element, which is manufactured from metal, is spatially spaced apart from the body portion, with the result that there is no direct metallic contact.
- the disk is likewise geometrically designed in such a way that the effective surface contact with respect to the body portion is as small as possible, in order to ensure the greatest possible reflection of the structure-borne sound waves.
- the fastening means in terms of diameter, is smaller than a through-bore of the body portion. So that direct metallic contact between the fastening means and the body portion is avoided not only in an axial direction but also in a radial direction, it should be ensured that the fastening means does not bear against the body portion.
- the diameter of the shaft of the fastening means is therefore dimensioned so as to be smaller than the diameter of the through-bore through which the fastening means is pushed.
- the first and/or the second plastics part are/is manufactured from a thermoplastic.
- a thermoplastic In order to ensure a sufficient preload of the first plastics part, in particular radiation-crosslinked thermoplastics are advantageous since these have a high creep behavior. This ensures that the preload of the fastening means does not decrease to an impermissible extent over the service life.
- the creep modulus is a key characteristic variable. Said creep modulus describes the time-related loading of the plastic taking into account the mechanical stress and the time-dependent strain. Therefore, according to the example, thermoplastics having a creep modulus (0.5% 1000 h) of 700 MPa in accordance with ISO 899-1 are used.
- the first and/or the second plastics part are/is manufactured from a thermoset.
- Thermosetting plastics are particularly advantageously suitable for obtaining the preload, since these do not tend to exhibit creep.
- the fastening device according to the present application can be used in the case of a free-standing air spring, but, according to a further preferred embodiment, can also be used in the case of an air spring with an integrated shock damper, that is to say an air spring strut.
- the device is used in a chassis of a motor vehicle.
- FIG. 1 shows an air spring strut according to the prior art
- FIG. 2 shows a first illustrative attachment of an air spring strut
- FIG. 3 shows a second illustrative attachment of an air spring strut
- FIG. 4 shows a third illustrative attachment of an air spring strut.
- FIG. 1 shows a known air spring strut 1 having the essential components, namely air spring 2 and shock damper 3 , wherein the air spring 2 comprises an air spring cover 4 , a rolling piston 5 and a rolling bellows 6 with an outer guide 7 which encloses it in the manner of a sleeve.
- the shock damper 3 is provided within the air spring 2 , the shock damper 3 comprising a damper tube 14 , a piston rod 15 which can dip into the latter, and a damper bearing 11 .
- the air spring strut 1 satisfies two functional areas: on the one hand, the air spring 2 generates the carrying force, while the shock damper 3 is responsible for linear guidance.
- Fastening means on the air spring cover 4 make it possible for the air spring strut 1 to be fastened on the one hand to a motor vehicle body and on the other hand, via a shock damper eye (not illustrated), to a wheel carrier of the motor vehicle chassis, with the result that the motor vehicle is sprung and damped.
- This regular installed position of an air spring strut determines the “up/down” orientation.
- the air spring 2 comprises a rolling bellows 6 composed of elastomer material, the rolling bellows 6 delimiting, with the air spring cover 4 and the rolling piston 5 , an airtight, volume-elastic working chamber 10 which can be filled with compressed air.
- the hose-shaped rolling bellows 6 is fastened by its first end to the air spring cover 4 and by its second end to the rolling piston 5 via clamping rings 18 at the connection regions of these air spring attachment parts.
- the rolling bellows 6 rolls on the concentric rolling surface of the rolling piston 5 with the formation of a rolling fold 8 . Furthermore, the rolling bellows 6 forms a cardanic fold 9 on the air spring cover 4 that acts as a cardanic bearing. At the same time, the rolling bellows 6 is provided with embedded strength members.
- outer guides 7 to limit the lateral extension of the rolling bellows 6 .
- the outer guide 7 is clamped against the rolling bellows 6 by an inner locking ring 12 provided in the working chamber 10 .
- a folding bellows 19 which is fastened, for example, to the wheel-carrier-side end region of the outer guide 7 and to the damper tube 14 .
- An additional spring 16 is arranged bearing against the lower side of the air spring cover 4 and facing toward the shock damper.
- the additional spring 16 has a through-bore for the piston rod 15 and therefore encloses the latter.
- the end side of the damper tube 14 moves toward the air spring cover 4 , and therefore the additional spring 16 serves as a travel limiter and damps possible forces acting on the air spring cover 4 .
- the damper tube 14 of the shock damper 3 is provided within the rolling piston 5 or is surrounded by the hollow cylindrical rolling piston 5 at least in certain regions, it being possible for the rolling piston 5 to be fastened standing on the damper tube via a supporting ring 17 or hanging on the end side of the damper tube 14 via a bearing element 13 .
- a combination of standing and hanging rolling piston 5 is also possible, as visible in the figure. It is additionally known to produce the rolling piston 5 from a light metal, such as aluminium, or a fiber-reinforced plastic.
- a sealing system 20 for example made of elastomer sealing rings, is provided between the end region facing the wheel carrier and the opposite outer wall of the damper tube 14 . This serves to seal to the outside the working chamber 10 , which can be expanded within the rolling piston, of the air spring 2 .
- FIG. 2 shows a detail of a first illustrative attachment of the air spring cover 4 of an air spring strut to a body portion 21 .
- a fastening means 22 is at least partially recessed into the air spring cover 4 of said air spring strut.
- Said fastening means is representative of a multiplicity of fastening means by means of which the air spring cover 4 is fastened to the body portion 21 .
- three fastening means are provided on the air spring cover 4 so as to be distributed in a circumferential direction.
- the fastening means 22 is embodied in the manner of a screw bolt, which is enclosed in the air spring cover 4 .
- the air spring cover 4 is preferably manufactured from plastics material.
- a part of the fastening means 22 is provided with an external thread and protrudes out of the air spring cover 4 .
- This shaft is plugged through a corresponding through-bore of the body portion 21 .
- the fastening means 22 is fixed to the upper side of the body portion 21 by means of a securing element 23 , in the form of a nut.
- the securing element 23 is equipped with an internal thread and is braced with the fastening means 22 in such a way that the air spring cover 4 is securely fastened to the body portion 21 .
- Other fastening concepts are also possible.
- an acoustic decoupling system in the form of two plastics parts is provided according to the example.
- a first plastics part 23 in the form of a disk, is positioned between the securing element 26 and the body portion 21 .
- the plastics part 23 is braced and brings about a clamping force for fixing of the fastening means 22 .
- a second plastics part 24 in the form of a sleeve, is pushed over the shaft of the fastening means 22 beforehand and is thus positioned between the air spring cover 4 and the body portion 21 .
- the second plastics part 24 bears against the lower side of the body portion 21 and serves as a spacer.
- the second plastics part 24 rests with its lower side on the annular surface of the fastening means 22 in order to be effective.
- the annular surface of the fastening means 22 terminates flush with the upper side of the air spring cover 4 .
- the fastening means 22 and the body portion 21 are metallic elements. On account of their virtually identical material properties, said fastening means and body portion should be provided so as to be separate from one another, in order to prevent the uninhibited transmission of structure-borne sound waves. That is to say there should be no direct metallic contact between the fastening means 22 and the body portion 21 . To this end, as can be seen from FIG. 2 , the shaft of the fastening means 22 has a diameter which is smaller than the through-bore of the body portion 21 that is provided for said means.
- the two plastics parts 23 , 24 are provided so that the structure-borne sound waves which are conducted from the air spring cover 4 into the fastening means 22 do not pass directly into the body portion 21 .
- the structure-borne sound waves are largely reflected and thus also absorbed.
- the two plastics parts 23 , 24 thus ensure acoustic decoupling of the attachment of the air spring strut to the body portion 21 , whereas the fastening means 22 ensures that the tensile and compressive forces are absorbed.
- Suitable materials for the plastics parts 23 , 24 are plastics having a high creep behavior, that is to say a high creep modulus. These are thermoplastics whose creep behavior has been optimized for example by radiation crosslinking or else thermosets which likewise have a suitable creep behavior.
- the fixing has to be effected with a defined preload.
- the elastic deformation is distributed to the first and the second plastics part 23 , 24 in dependence on their area and stiffness.
- FIG. 3 shows a partial detail of a second illustrative attachment of an air spring strut, in the case of which the second plastics part is designed in the form of a ring 25 .
- the function and mode of action of this second exemplary embodiment are identical to the first exemplary embodiment of FIG. 2 .
- a ring 25 as second plastics part is pushed over the shaft of the fastening means 21 , such that said ring acts as a buffer.
- the ring 25 is embedded in the air spring cover 4 in such a way that the upper side of the ring 25 terminates flush with the upper side of the air spring cover 4 and the lower side of the ring 25 rests on the annular surface of the fastening means 22 . That is to say that, in the connected state of the air spring strut, the upper side of the ring 25 and the upper side of the air spring cover 4 together bear against the lower side of the body portion.
- the second plastics part 25 constitutes a metallic decoupling of the fastening means 22 with respect to the body portion 21 , because said second plastics part lies in the axial force path of the annular surface of the fastening means 22 and the lower side of the body portion 21 , without the fastening means 22 being in direct contact with the body portion 21 .
- the second plastics part 25 has a special manufacturing process.
- the fastening means 22 comprises a relief groove toward its annular surface, such that the inner wall of the second plastics part 25 at least only partially bears against the shaft of the fastening means 22 .
- the outer diameter of the second plastics part 25 is smaller than the diameter of the corresponding cutout in the air spring cover 4 . That is to say the outer wall of the second plastics part 25 does not abut the material of the air spring cover 4 in the radial direction.
- the second plastics part is dispensed with in the third exemplary embodiment of FIG. 4 .
- the shaft of the fastening means 22 is surrounded by the material of the air spring cover 4 in such a way that said material acts as a spacer between the fastening means 22 and the body portion 21 .
- the material used for the air spring cover 4 is a thermoplastic or a thermoset.
- the structural design also brings about acoustic decoupling, since the air spring cover which is manufactured from plastics material acts as the second plastics part and bears with its upper side against the lower side of the body portion 21 .
- the fastening means 22 is likewise acoustically decoupled from the body portion 21 . Consequently, the function and mode of action of this third exemplary embodiment are likewise identical to the first exemplary embodiment of FIG. 2 .
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Vehicle Body Suspensions (AREA)
- Fluid-Damping Devices (AREA)
Abstract
Description
Claims (11)
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102019201357.0A DE102019201357A1 (en) | 2019-02-04 | 2019-02-04 | Device for fastening an air spring with acoustic decoupling |
| DE102019201357.0 | 2019-02-04 | ||
| PCT/EP2020/052549 WO2020161043A1 (en) | 2019-02-04 | 2020-02-03 | Device for securing a pneumatic spring with an acoustic decoupling function |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| US20220118809A1 US20220118809A1 (en) | 2022-04-21 |
| US11827066B2 true US11827066B2 (en) | 2023-11-28 |
Family
ID=69423331
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US17/428,362 Active 2040-04-07 US11827066B2 (en) | 2019-02-04 | 2020-02-03 | Device for securing a pneumatic spring with an acoustic decoupling function |
Country Status (4)
| Country | Link |
|---|---|
| US (1) | US11827066B2 (en) |
| CN (1) | CN113272163B (en) |
| DE (1) | DE102019201357A1 (en) |
| WO (1) | WO2020161043A1 (en) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN115306853A (en) * | 2022-08-04 | 2022-11-08 | 广东溢康通空气弹簧有限公司 | Diaphragm type air spring and composite shock absorber |
Citations (17)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5655489A (en) | 1994-09-27 | 1997-08-12 | Bayer Aktiengesellschaft | Valve cover |
| CN1282687A (en) | 1999-07-30 | 2001-02-07 | 卡尔·弗罗伊登伯格公司 | Shock reducing pillar supporting cradle |
| DE10039763A1 (en) | 2000-08-16 | 2002-02-28 | Volkswagen Ag | Vibration damper for vehicles uses plate spring whose stiffness and inherent frequency are changed through applying variable radially acting static force |
| US20030127788A1 (en) | 2000-08-17 | 2003-07-10 | Arndt Graeve | Hydraulic damping mount for supporting a spring strut |
| US20040017035A1 (en) | 2002-06-29 | 2004-01-29 | Christian Treder | Damper support having a contoured end face for a shock absorber of a motor vehicle |
| US20050029062A1 (en) | 2003-08-07 | 2005-02-10 | Simon Dean | Front strut air spring suspension system |
| US20060169524A1 (en) | 2002-12-19 | 2006-08-03 | Daimlerchrysler Ag | Steering-column assembly |
| US20080136072A1 (en) * | 2004-10-07 | 2008-06-12 | Zf Friedrichshafen Ag | Pneumatic Spring Comprising a Ball Joint |
| JP2010286099A (en) | 2009-06-15 | 2010-12-24 | Kayaba Ind Co Ltd | mount |
| EP2390120A1 (en) | 2010-05-26 | 2011-11-30 | Continental Teves AG & Co. oHG | Acoustic decoupling in vehicle chassis |
| DE102010046613A1 (en) | 2010-09-25 | 2012-03-29 | Volkswagen Ag | Transmission for steering system of motor vehicle, has casing that is stand in contact with connecting rod, wheel that is arranged on casing and pin |
| DE102011086415A1 (en) | 2011-02-09 | 2012-08-09 | Continental Teves Ag & Co. Ohg | Air spring strut for use in system for suspension of wheel or axle of vehicle, has air spring rolling piston, shock absorber tube, rolling bellows and elastic bearing |
| DE102012223216A1 (en) | 2012-12-14 | 2014-06-18 | Continental Teves Ag & Co. Ohg | Vehicle chassis with acoustic bearing |
| CN204113990U (en) | 2014-08-30 | 2015-01-21 | 广州维金汽车零部件有限公司 | A kind of operator cabin damping air spring |
| DE102014015092A1 (en) | 2014-10-10 | 2016-04-14 | Audi Ag | Wheel suspension for a wheel of an axle of a motor vehicle |
| DE102016210121A1 (en) | 2016-06-08 | 2017-12-14 | Ford Global Technologies, Llc | Air spring for chassis of vehicles |
| DE102017215348A1 (en) | 2016-09-02 | 2018-03-08 | Continental Teves Ag & Co. Ohg | Air strut with acoustic bearing |
-
2019
- 2019-02-04 DE DE102019201357.0A patent/DE102019201357A1/en active Pending
-
2020
- 2020-02-03 CN CN202080008263.0A patent/CN113272163B/en active Active
- 2020-02-03 WO PCT/EP2020/052549 patent/WO2020161043A1/en not_active Ceased
- 2020-02-03 US US17/428,362 patent/US11827066B2/en active Active
Patent Citations (19)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5655489A (en) | 1994-09-27 | 1997-08-12 | Bayer Aktiengesellschaft | Valve cover |
| CN1282687A (en) | 1999-07-30 | 2001-02-07 | 卡尔·弗罗伊登伯格公司 | Shock reducing pillar supporting cradle |
| DE10039763A1 (en) | 2000-08-16 | 2002-02-28 | Volkswagen Ag | Vibration damper for vehicles uses plate spring whose stiffness and inherent frequency are changed through applying variable radially acting static force |
| US20030127788A1 (en) | 2000-08-17 | 2003-07-10 | Arndt Graeve | Hydraulic damping mount for supporting a spring strut |
| US20040017035A1 (en) | 2002-06-29 | 2004-01-29 | Christian Treder | Damper support having a contoured end face for a shock absorber of a motor vehicle |
| US20060169524A1 (en) | 2002-12-19 | 2006-08-03 | Daimlerchrysler Ag | Steering-column assembly |
| US20050029062A1 (en) | 2003-08-07 | 2005-02-10 | Simon Dean | Front strut air spring suspension system |
| CN1826240A (en) | 2003-08-07 | 2006-08-30 | 阿文美驰技术有限责任公司 | Front strut air spring suspension system |
| US20080136072A1 (en) * | 2004-10-07 | 2008-06-12 | Zf Friedrichshafen Ag | Pneumatic Spring Comprising a Ball Joint |
| JP2010286099A (en) | 2009-06-15 | 2010-12-24 | Kayaba Ind Co Ltd | mount |
| EP2390120A1 (en) | 2010-05-26 | 2011-11-30 | Continental Teves AG & Co. oHG | Acoustic decoupling in vehicle chassis |
| DE102010017084A1 (en) | 2010-05-26 | 2011-12-01 | Continental Teves Ag & Co. Ohg | Acoustic decoupling in vehicle chassis |
| DE102010046613A1 (en) | 2010-09-25 | 2012-03-29 | Volkswagen Ag | Transmission for steering system of motor vehicle, has casing that is stand in contact with connecting rod, wheel that is arranged on casing and pin |
| DE102011086415A1 (en) | 2011-02-09 | 2012-08-09 | Continental Teves Ag & Co. Ohg | Air spring strut for use in system for suspension of wheel or axle of vehicle, has air spring rolling piston, shock absorber tube, rolling bellows and elastic bearing |
| DE102012223216A1 (en) | 2012-12-14 | 2014-06-18 | Continental Teves Ag & Co. Ohg | Vehicle chassis with acoustic bearing |
| CN204113990U (en) | 2014-08-30 | 2015-01-21 | 广州维金汽车零部件有限公司 | A kind of operator cabin damping air spring |
| DE102014015092A1 (en) | 2014-10-10 | 2016-04-14 | Audi Ag | Wheel suspension for a wheel of an axle of a motor vehicle |
| DE102016210121A1 (en) | 2016-06-08 | 2017-12-14 | Ford Global Technologies, Llc | Air spring for chassis of vehicles |
| DE102017215348A1 (en) | 2016-09-02 | 2018-03-08 | Continental Teves Ag & Co. Ohg | Air strut with acoustic bearing |
Non-Patent Citations (4)
| Title |
|---|
| Chinese Decision of Refusal dated Jun. 29, 2023 for the counterpart Chinese Patent Application No. 202080008263.0 and DeepL translation of same. |
| Chinese Office Action dated Mar. 15, 2023 for the counterpart Chinese Patent Application 20208008263.0.0. |
| German Search Report dated Jan. 16, 2020 for the corresponding German Patent Application No. 10 2019 201 357.0. |
| International Search Report and the Written Opinion of the International Searching Authority dated May 11, 2020 for the counterpart PCT Application No. PCT/EP2019/052549. |
Also Published As
| Publication number | Publication date |
|---|---|
| CN113272163B (en) | 2024-03-22 |
| WO2020161043A1 (en) | 2020-08-13 |
| US20220118809A1 (en) | 2022-04-21 |
| DE102019201357A1 (en) | 2020-08-06 |
| CN113272163A (en) | 2021-08-17 |
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